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Solvent-driven electron trapping and mass transport in reduced graphites to access perfect graphene

机译:还原石墨中的溶剂驱动电子俘获和质量传输以获取完美的石墨烯

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摘要

Herein, we report on a significant discovery, namely, the quantitative discharging of reduced graphite forms, such as graphite intercalation compounds, graphenide dispersions and graphenides deposited on surfaces with the simple solvent benzonitrile. Because of its comparatively low reduction potential, benzonitrile is reduced during this process to the radical anion, which exhibits a red colour and serves as a reporter molecule for the quantitative determination of negative charges on the carbon sheets. Moreover, this discovery reveals a very fundamental physical–chemical phenomenon, namely a quantitative solvent reduction induced and electrostatically driven mass transport of K+ ions from the graphite intercalation compounds into the liquid. The simple treatment of dispersed graphenides suspended on silica substrates with benzonitrile leads to the clean conversion to graphene. This unprecedented procedure represents a rather mild, scalable and inexpensive method for graphene production surpassing previous wet-chemical approaches.
机译:在此,我们报告了一个重大发现,即定量还原的石墨形式,例如石墨插层化合物,石墨烯分散体和石墨烯的沉积,其表面沉积有简单的溶剂苄腈。由于其相对较低的还原电势,因此在此过程中将苄腈还原为自由基阴离子,该自由基阴离子呈红色,并用作报告分子,用于定量确定碳片上的负电荷。此外,这一发现揭示了一个非常基本的物理化学现象,即定量的溶剂还原诱导和静电驱动的K + 离子从石墨嵌入化合物进入液体的质量传输。用苄腈对悬浮在二氧化硅基质上的分散石墨烯进行简单处理,即可完全转化为石墨烯。这种空前的过程代表了一种相当温和,可扩展且廉价的石墨烯生产方法,它超越了以前的湿化学方法。

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